Abstract:
A fluid dispensing toothbrush (100, 500, 600, 800). In one aspect, the toothbrush comprises a body (105, 505, 605, 805) having a reservoir (135, 635, 835) containing an oral care fluid therein, the oral care fluid being delivered to an applicator (132, 532, 632, 832) via capillary action. The toothbrush comprises an actuator for moving either the applicator and/or the reservoir between different positions.
Abstract:
A fluid dispensing oral care implement (100). In one aspect, the oral care implement comprises a body (105) comprising a handle (120), a head (110) coupled to the handle, and an internal cavity (140, 150) containing an oral care material; and a roll -on applicator (130) rotatably mounted to the body, such that the oral care material is delivered from the internal cavity to an exposed portion of the roll -on applicator (130) due to rotation of the roll -on applicator.
Abstract:
An oral care implement, such as a toothbrush, having a wick applicator and a method of assembling the same. The implement includes a head, a handle connected to the head by a neck portion, and a recess. The recess is arranged for receipt of the wick applicator. The handle includes an internal fluid reservoir holding a fluid in communication with the recess. The wick applicator is arranged to enable a fluid to pass therethrough by capillary action and has a first end portion and a second end portion. The second portion of the wick applicator comprises at least one projection for engaging at least one cooperating portion of the recess to secure the wick applicator in the recess at an operative position, whereupon the wick applicator is in fluid communication with the fluid in the reservoir.
Abstract:
A dental floss dispenser having a wicking delivery system with a reservoir for storing a solution of oral care ingredients generally in fluid form. The reservoir includes an absorbent wicking porous pad that extends through at least a portion of the floss dispensing device to deliver the solution to the dental floss. When the floss is pulled through the porous pad holding the oral care ingredient(s), the porous pad activates (e.g., coats, impregnates, saturates) the floss, providing the consumer with new benefits such as enhanced deep cleaning, new flavors, better plaque dissolving capabilities, ease of floss use and maneuverability, whitening, and deposition of therapeutic actives into the gum pockets.
Abstract:
An oral care system, such as a toothbrush having a detachable dispenser containing an oral care material. In one embodiment, the dispenser may include a housing; an internal reservoir for containing a fluid and a dispensing orifice for dispensing the fluid; a first cam surface, the first cam surface being non-rotatable with respect to the housing; a reciprocator comprising an actuator, a drive screw, and a second cam surface, the reciprocator being rotatable with respect to the housing; an elevator forming a transverse end wall of the reservoir, the elevator being non-rotatable with respect to the housing and threadily coupled to the drive screw; wherein rotation of the actuator causes the elevator to (1) axially advance, and (2) axially reciprocate.
Abstract:
An oral care system and method for applying a fluid to an oral surface, including a method of manufacturing the same. In one embodiment, the invention can be an oral care system comprising: a toothbrush; and a dispenser detachably coupled to the toothbrush, the dispenser comprising: an internal reservoir containing a fluid; and a conduit in fluid communication with the reservoir and terminating in an orifice for dispensing the fluid; and a plug having a proximal plug portion disposed within the conduit and a distal plug portion disposed within a socket of the toothbrush.
Abstract:
An oral care system and method comprising an oral care implement such as a toothbrush having a plurality of tooth engaging elements and a cavity adapted to detachably house a dispenser containing an oral care agent. In one embodiment, the dispenser may be configured as a dispensing pen having an applicator on one end. A user may dismount the dispenser from the toothbrush, apply the agent to the oral surface, and re -mount the dispenser in the toothbrush for storage.
Abstract:
A mechanical energy harvesting toothbrush may employ circuits and devices to convert mechanical energy into electrical energy. Such conversion can be done using piezoelectric devices to convert stresses and strains from bending of the toothbrush head and/or bristles during use, and can be done using electromagnetic generators involving passing a magnet through a coil to induce current. The resulting electric energy may be rectified, and stored in a storage device, such as a capacitor or rechargeable battery. A switching circuit may be configured to detect the level of energy stored in the storage device, and to close an electrical connection when a predetermined level of energy (e.g., a charge) has been reached. The predetermined level may correspond to a desired amount of brushing (e.g., taking into account stroke length and force, and the number of strokes), and the closing of the electrical connection may be used to power output devices when that desired amount of brushing has been reached.